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首页> 外文期刊>Journal of seismology >Mechanism of the M L 4.0 25 April 2016 earthquake in southwest of France in the vicinity of the Lacq gas field
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Mechanism of the M L 4.0 25 April 2016 earthquake in southwest of France in the vicinity of the Lacq gas field

机译:M <下标> <重点型=“斜体”> l 4.0 2016年4月25日法国西南地震在LACQ气田附近

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The source mechanism of the M ~( L )4.0 25 April 2016 Lacq earthquake (Aquitaine Basin, South-West France) is analyzed from the available public data and discussed with respect to the geometry of the nearby Lacq gas field. It is one of the biggest earthquakes in the area in the past few decades of gas extraction and the biggest after the end of gas exploitation in 2013. The routinely obtained location shows its hypocenter position inside the gas reservoir. We first analyze its focal mechanism through regional broad-band seismograms recorded in a radius of about 50?km epicentral distances and obtain EW running normal faulting above the reservoir. While the solution is stable using regional data only, we observe a large discrepancy between the recorded data on nearby station URDF and the forward modeling up to 1?Hz. We then look for the best epicenter position through performing wave propagation simulations and constraining the potential source area by the peak ground velocity (PGV). The resulting epicentral position is a few to several km away to the north or south direction with respect to station URDF such that the simulated particle motions are consistent with the observation. The initial motion of the seismograms shows that the epicenter position in the north from URDF is preferable, indicating the north-east of the Lacq reservoir. This study is an application of full waveform simulations and characterization of near-field ground motion in terms of an engineering factor such as PGV. The finally obtained solution gives a moment magnitude of M ~( w )3.9 and the best focal depth of 4?km, which corresponds to the crust above the reservoir rather than its interior. This position is consistent with the tendency of Coulomb stress change due to a compaction at 5?km depth in the crust. Therefore, this earthquake can be interpreted as a relaxation of the shallow crust due to a deeper gas reservoir compaction so that the occurrence of similar events cannot be excluded in th
机译:M〜(L)4.0的源机制2016年4月25日4月LACQ地震(Aquitaine Basin,法国西南法国)分析了可用的公共数据,并讨论了附近LACQ气田的几何形状。它是该地区最大的地震之一,在过去几十年的天然气提取和2013年气体剥削结束后最大的地震。经常获得的位置显示其在气体储层内部的斜视位置。我们首先通过在大约50 km震髁上记录的区域宽带地震图来分析其焦点机制,并获得储层上方运行正常断层的EW。虽然解决方案仅使用区域数据稳定,但我们观察在附近的车站URDF上的记录数据之间的差异,前进建模高达1?Hz。然后,我们通过执行波传播模拟并通过峰值接地速度(PGV)约束电位源区来寻找最佳震中位置。由此产生的震中位置对于站点URDF而言,北方或南方方向几里至几厘米,使得模拟粒子运动与观察一致。地震图的初始动作表明,北方乌尔德夫的震中位置是优选的,表明LACQ水库的东北部。本研究是在PGV等工程因素方面应用全波形模拟和近场地面运动的表征。最后获得的溶液给出了M〜(w)3.9的片刻幅度,最佳焦深4 km,这对应于储层以上的地壳而不是其内部。该位置与Coulomb应力变化的趋势一致,因为在地壳中的5μmm深度的压实。因此,由于气体储层压实更深的气体储层压实,这种地震可以被解释为浅地壳的弛豫,因此不能排除类似事件的发生

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